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572 lines
16 KiB
572 lines
16 KiB
/* |
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* Copyright (C) 2015 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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#ifndef SIMPLE_PERF_RECORD_H_ |
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#define SIMPLE_PERF_RECORD_H_ |
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#include <stdio.h> |
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#include <sys/types.h> |
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#include <memory> |
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#include <queue> |
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#include <string> |
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#include <vector> |
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#include <android-base/logging.h> |
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#include "build_id.h" |
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#include "perf_event.h" |
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enum user_record_type { |
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PERF_RECORD_USER_DEFINED_TYPE_START = 64, |
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PERF_RECORD_ATTR = 64, |
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PERF_RECORD_EVENT_TYPE, |
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PERF_RECORD_TRACING_DATA, |
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PERF_RECORD_BUILD_ID, |
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PERF_RECORD_FINISHED_ROUND, |
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SIMPLE_PERF_RECORD_TYPE_START = 32768, |
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SIMPLE_PERF_RECORD_KERNEL_SYMBOL, |
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// TODO: remove DsoRecord and SymbolRecord. |
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SIMPLE_PERF_RECORD_DSO, |
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SIMPLE_PERF_RECORD_SYMBOL, |
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SIMPLE_PERF_RECORD_SPLIT, |
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SIMPLE_PERF_RECORD_SPLIT_END, |
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SIMPLE_PERF_RECORD_EVENT_ID, |
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}; |
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// perf_event_header uses u16 to store record size. However, that is not |
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// enough for storing records like KERNEL_SYMBOL or TRACING_DATA. So define |
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// a simpleperf_record_header struct to store record header for simpleperf |
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// defined records (type > SIMPLE_PERF_RECORD_TYPE_START). |
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struct simpleperf_record_header { |
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uint32_t type; |
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uint16_t size1; |
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uint16_t size0; |
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}; |
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static_assert( |
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sizeof(simpleperf_record_header) == sizeof(perf_event_header), |
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"simpleperf_record_header should have the same size as perf_event_header"); |
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struct PerfSampleIpType { |
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uint64_t ip; |
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}; |
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struct PerfSampleTidType { |
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uint32_t pid, tid; |
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}; |
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struct PerfSampleTimeType { |
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uint64_t time; |
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}; |
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struct PerfSampleAddrType { |
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uint64_t addr; |
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}; |
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struct PerfSampleIdType { |
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uint64_t id; |
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}; |
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struct PerfSampleStreamIdType { |
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uint64_t stream_id; |
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}; |
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struct PerfSampleCpuType { |
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uint32_t cpu, res; |
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}; |
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struct PerfSamplePeriodType { |
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uint64_t period; |
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}; |
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struct PerfSampleCallChainType { |
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uint64_t ip_nr; |
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const uint64_t* ips; |
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}; |
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struct PerfSampleRawType { |
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uint32_t size; |
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const char* data; |
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}; |
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struct BranchStackItemType { |
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uint64_t from; |
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uint64_t to; |
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uint64_t flags; |
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}; |
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struct PerfSampleBranchStackType { |
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uint64_t stack_nr; |
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const BranchStackItemType* stack; |
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}; |
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struct PerfSampleRegsUserType { |
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uint64_t abi; |
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uint64_t reg_mask; |
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uint64_t reg_nr; |
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const uint64_t* regs; |
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}; |
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struct PerfSampleStackUserType { |
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uint64_t size; |
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const char* data; |
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uint64_t dyn_size; |
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}; |
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struct RecordHeader { |
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public: |
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uint32_t type; |
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uint16_t misc; |
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uint32_t size; |
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RecordHeader() : type(0), misc(0), size(0) {} |
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explicit RecordHeader(const char* p) { |
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auto pheader = reinterpret_cast<const perf_event_header*>(p); |
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if (pheader->type < SIMPLE_PERF_RECORD_TYPE_START) { |
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type = pheader->type; |
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misc = pheader->misc; |
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size = pheader->size; |
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} else { |
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auto sheader = reinterpret_cast<const simpleperf_record_header*>(p); |
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type = sheader->type; |
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misc = 0; |
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size = (sheader->size1 << 16) | sheader->size0; |
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} |
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} |
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void MoveToBinaryFormat(char*& p) const { |
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if (type < SIMPLE_PERF_RECORD_TYPE_START) { |
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auto pheader = reinterpret_cast<perf_event_header*>(p); |
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pheader->type = type; |
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pheader->misc = misc; |
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CHECK_LT(size, 1u << 16); |
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pheader->size = static_cast<uint16_t>(size); |
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} else { |
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auto sheader = reinterpret_cast<simpleperf_record_header*>(p); |
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sheader->type = type; |
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CHECK_EQ(misc, 0u); |
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sheader->size1 = size >> 16; |
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sheader->size0 = size & 0xffff; |
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} |
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p += sizeof(perf_event_header); |
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} |
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}; |
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// SampleId is optional at the end of a record in binary format. Its content is |
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// determined by sample_id_all and sample_type in perf_event_attr. To avoid the |
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// complexity of referring to perf_event_attr each time, we copy sample_id_all |
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// and sample_type inside the SampleId structure. |
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struct SampleId { |
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bool sample_id_all; |
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uint64_t sample_type; |
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PerfSampleTidType tid_data; // Valid if sample_id_all && PERF_SAMPLE_TID. |
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PerfSampleTimeType time_data; // Valid if sample_id_all && PERF_SAMPLE_TIME. |
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PerfSampleIdType id_data; // Valid if sample_id_all && PERF_SAMPLE_ID. |
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PerfSampleStreamIdType |
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stream_id_data; // Valid if sample_id_all && PERF_SAMPLE_STREAM_ID. |
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PerfSampleCpuType cpu_data; // Valid if sample_id_all && PERF_SAMPLE_CPU. |
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SampleId(); |
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// Create the content of sample_id. It depends on the attr we use. |
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size_t CreateContent(const perf_event_attr& attr, uint64_t event_id); |
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// Parse sample_id from binary format in the buffer pointed by p. |
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void ReadFromBinaryFormat(const perf_event_attr& attr, const char* p, |
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const char* end); |
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// Write the binary format of sample_id to the buffer pointed by p. |
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void WriteToBinaryFormat(char*& p) const; |
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void Dump(size_t indent) const; |
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size_t Size() const; |
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}; |
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// Usually one record contains the following three parts in order in binary |
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// format: |
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// RecordHeader (at the head of a record, containing type and size info) |
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// data depends on the record type |
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// SampleId (optional part at the end of a record) |
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// We hold the common parts (RecordHeader and SampleId) in the base class |
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// Record, and hold the type specific data part in classes derived from Record. |
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struct Record { |
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RecordHeader header; |
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SampleId sample_id; |
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Record() : binary_(nullptr), own_binary_(false) {} |
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explicit Record(const char* p) : header(p), binary_(p), own_binary_(false) {} |
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Record(Record&& other); |
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virtual ~Record() { |
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if (own_binary_) { |
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delete[] binary_; |
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} |
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} |
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void OwnBinary() { own_binary_ = true; } |
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uint32_t type() const { return header.type; } |
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uint16_t misc() const { return header.misc; } |
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uint32_t size() const { return header.size; } |
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static uint32_t header_size() { return sizeof(perf_event_header); } |
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bool InKernel() const { |
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return (header.misc & PERF_RECORD_MISC_CPUMODE_MASK) == |
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PERF_RECORD_MISC_KERNEL; |
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} |
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void SetTypeAndMisc(uint32_t type, uint16_t misc) { |
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header.type = type; |
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header.misc = misc; |
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} |
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void SetSize(uint32_t size) { header.size = size; } |
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void Dump(size_t indent = 0) const; |
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const char* Binary() const { return binary_; } |
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virtual uint64_t Timestamp() const; |
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virtual uint32_t Cpu() const; |
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virtual uint64_t Id() const; |
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protected: |
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void UpdateBinary(const char* new_binary); |
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virtual void DumpData(size_t) const = 0; |
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const char* binary_; |
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bool own_binary_; |
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DISALLOW_COPY_AND_ASSIGN(Record); |
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}; |
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struct MmapRecord : public Record { |
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struct MmapRecordDataType { |
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uint32_t pid, tid; |
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uint64_t addr; |
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uint64_t len; |
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uint64_t pgoff; |
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}; |
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const MmapRecordDataType* data; |
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const char* filename; |
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MmapRecord(const perf_event_attr& attr, const char* p); |
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MmapRecord(const perf_event_attr& attr, bool in_kernel, uint32_t pid, |
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uint32_t tid, uint64_t addr, uint64_t len, uint64_t pgoff, |
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const std::string& filename, uint64_t event_id, uint64_t time = 0); |
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void SetDataAndFilename(const MmapRecordDataType& data, |
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const std::string& filename); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct Mmap2Record : public Record { |
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struct Mmap2RecordDataType { |
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uint32_t pid, tid; |
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uint64_t addr; |
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uint64_t len; |
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uint64_t pgoff; |
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uint32_t maj; |
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uint32_t min; |
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uint64_t ino; |
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uint64_t ino_generation; |
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uint32_t prot, flags; |
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}; |
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const Mmap2RecordDataType* data; |
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const char* filename; |
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Mmap2Record(const perf_event_attr& attr, const char* p); |
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void SetDataAndFilename(const Mmap2RecordDataType& data, |
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const std::string& filename); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct CommRecord : public Record { |
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struct CommRecordDataType { |
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uint32_t pid, tid; |
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}; |
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const CommRecordDataType* data; |
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const char* comm; |
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CommRecord(const perf_event_attr& attr, const char* p); |
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CommRecord(const perf_event_attr& attr, uint32_t pid, uint32_t tid, |
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const std::string& comm, uint64_t event_id, uint64_t time); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct ExitOrForkRecord : public Record { |
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struct ExitOrForkRecordDataType { |
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uint32_t pid, ppid; |
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uint32_t tid, ptid; |
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uint64_t time; |
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}; |
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const ExitOrForkRecordDataType* data; |
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ExitOrForkRecord(const perf_event_attr& attr, const char* p); |
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ExitOrForkRecord() : data(nullptr) {} |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct ExitRecord : public ExitOrForkRecord { |
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ExitRecord(const perf_event_attr& attr, const char* p) |
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: ExitOrForkRecord(attr, p) {} |
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}; |
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struct ForkRecord : public ExitOrForkRecord { |
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ForkRecord(const perf_event_attr& attr, const char* p) |
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: ExitOrForkRecord(attr, p) {} |
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ForkRecord(const perf_event_attr& attr, uint32_t pid, uint32_t tid, |
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uint32_t ppid, uint32_t ptid, uint64_t event_id); |
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}; |
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struct LostRecord : public Record { |
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uint64_t id; |
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uint64_t lost; |
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LostRecord(const perf_event_attr& attr, const char* p); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct SampleRecord : public Record { |
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uint64_t sample_type; // sample_type is a bit mask determining which fields |
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// below are valid. |
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PerfSampleIpType ip_data; // Valid if PERF_SAMPLE_IP. |
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PerfSampleTidType tid_data; // Valid if PERF_SAMPLE_TID. |
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PerfSampleTimeType time_data; // Valid if PERF_SAMPLE_TIME. |
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PerfSampleAddrType addr_data; // Valid if PERF_SAMPLE_ADDR. |
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PerfSampleIdType id_data; // Valid if PERF_SAMPLE_ID. |
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PerfSampleStreamIdType stream_id_data; // Valid if PERF_SAMPLE_STREAM_ID. |
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PerfSampleCpuType cpu_data; // Valid if PERF_SAMPLE_CPU. |
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PerfSamplePeriodType period_data; // Valid if PERF_SAMPLE_PERIOD. |
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PerfSampleCallChainType callchain_data; // Valid if PERF_SAMPLE_CALLCHAIN. |
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PerfSampleRawType raw_data; // Valid if PERF_SAMPLE_RAW. |
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PerfSampleBranchStackType |
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branch_stack_data; // Valid if PERF_SAMPLE_BRANCH_STACK. |
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PerfSampleRegsUserType regs_user_data; // Valid if PERF_SAMPLE_REGS_USER. |
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PerfSampleStackUserType stack_user_data; // Valid if PERF_SAMPLE_STACK_USER. |
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SampleRecord(const perf_event_attr& attr, const char* p); |
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SampleRecord(const perf_event_attr& attr, uint64_t id, uint64_t ip, |
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uint32_t pid, uint32_t tid, uint64_t time, uint32_t cpu, |
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uint64_t period, const std::vector<uint64_t>& ips); |
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void ReplaceRegAndStackWithCallChain(const std::vector<uint64_t>& ips); |
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uint64_t Timestamp() const override; |
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uint32_t Cpu() const override; |
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uint64_t Id() const override; |
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uint64_t GetValidStackSize() const { |
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// If stack_user_data.dyn_size == 0, it may be because the kernel misses |
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// the patch to update dyn_size, like in N9 (See b/22612370). So assume |
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// all stack data is valid if dyn_size == 0. |
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if (stack_user_data.dyn_size == 0) { |
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return stack_user_data.size; |
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} |
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return stack_user_data.dyn_size; |
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} |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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// BuildIdRecord is defined in user-space, stored in BuildId feature section in |
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// record file. |
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struct BuildIdRecord : public Record { |
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uint32_t pid; |
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BuildId build_id; |
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const char* filename; |
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explicit BuildIdRecord(const char* p); |
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BuildIdRecord(bool in_kernel, pid_t pid, const BuildId& build_id, |
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const std::string& filename); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct KernelSymbolRecord : public Record { |
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uint32_t kallsyms_size; |
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const char* kallsyms; |
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explicit KernelSymbolRecord(const char* p); |
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explicit KernelSymbolRecord(const std::string& kallsyms); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct DsoRecord : public Record { |
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uint64_t dso_type; |
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uint64_t dso_id; |
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uint64_t min_vaddr; |
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const char* dso_name; |
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explicit DsoRecord(const char* p); |
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DsoRecord(uint64_t dso_type, uint64_t dso_id, const std::string& dso_name, |
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uint64_t min_vaddr); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct SymbolRecord : public Record { |
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uint64_t addr; |
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uint64_t len; |
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uint64_t dso_id; |
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const char* name; |
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explicit SymbolRecord(const char* p); |
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SymbolRecord(uint64_t addr, uint64_t len, const std::string& name, |
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uint64_t dso_id); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct TracingDataRecord : public Record { |
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uint32_t data_size; |
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const char* data; |
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explicit TracingDataRecord(const char* p); |
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explicit TracingDataRecord(const std::vector<char>& tracing_data); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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struct EventIdRecord : public Record { |
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uint64_t count; |
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struct EventIdData { |
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uint64_t attr_id; |
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uint64_t event_id; |
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} const* data; |
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explicit EventIdRecord(const char* p); |
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explicit EventIdRecord(const std::vector<uint64_t>& data); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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// UnknownRecord is used for unknown record types, it makes sure all unknown |
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// records are not changed when modifying perf.data. |
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struct UnknownRecord : public Record { |
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const char* data; |
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explicit UnknownRecord(const char* p); |
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protected: |
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void DumpData(size_t indent) const override; |
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}; |
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// Read record from the buffer pointed by [p]. But the record doesn't own |
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// the buffer. |
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std::unique_ptr<Record> ReadRecordFromBuffer(const perf_event_attr& attr, |
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uint32_t type, const char* p); |
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// Read record from the buffer pointed by [p]. And the record owns the buffer. |
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std::unique_ptr<Record> ReadRecordFromOwnedBuffer(const perf_event_attr& attr, |
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uint32_t type, const char* p); |
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// Read records from the buffer pointed by [buf]. None of the records own |
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// the buffer. |
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std::vector<std::unique_ptr<Record>> ReadRecordsFromBuffer( |
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const perf_event_attr& attr, const char* buf, size_t buf_size); |
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// Read one record from the buffer pointed by [p]. But the record doesn't |
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// own the buffer. |
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std::unique_ptr<Record> ReadRecordFromBuffer(const perf_event_attr& attr, |
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const char* p); |
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// RecordCache is a cache used when receiving records from the kernel. |
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// It sorts received records based on type and timestamp, and pops records |
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// in sorted order. Records from the kernel need to be sorted because |
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// records may come from different cpus at the same time, and it is affected |
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// by the order in which we collect records from different cpus. |
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// RecordCache pushes records and pops sorted record online. It uses two checks |
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// to help ensure that records are popped in order. Each time we pop a record A, |
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// it is the earliest record among all records in the cache. In addition, we |
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// have checks for min_cache_size and min_time_diff. For min_cache_size check, |
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// we check if the cache size >= min_cache_size, which is based on the |
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// assumption that if we have received (min_cache_size - 1) records after |
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// record A, we are not likely to receive a record earlier than A. For |
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// min_time_diff check, we check if record A is generated min_time_diff ns |
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// earlier than the latest record, which is based on the assumption that if we |
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// have received a record for time t, we are not likely to receive a record for |
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// time (t - min_time_diff) or earlier. |
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class RecordCache { |
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public: |
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explicit RecordCache(bool has_timestamp, size_t min_cache_size = 1000u, |
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uint64_t min_time_diff_in_ns = 1000000u); |
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~RecordCache(); |
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void Push(std::unique_ptr<Record> record); |
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void Push(std::vector<std::unique_ptr<Record>> records); |
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std::unique_ptr<Record> Pop(); |
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std::vector<std::unique_ptr<Record>> PopAll(); |
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std::unique_ptr<Record> ForcedPop(); |
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private: |
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struct RecordWithSeq { |
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uint32_t seq; |
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Record* record; |
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RecordWithSeq(uint32_t seq, Record* record) : seq(seq), record(record) {} |
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bool IsHappensBefore(const RecordWithSeq& other) const; |
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}; |
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struct RecordComparator { |
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bool operator()(const RecordWithSeq& r1, const RecordWithSeq& r2); |
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}; |
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bool has_timestamp_; |
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size_t min_cache_size_; |
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uint64_t min_time_diff_in_ns_; |
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uint64_t last_time_; |
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uint32_t cur_seq_; |
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std::priority_queue<RecordWithSeq, std::vector<RecordWithSeq>, |
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RecordComparator> queue_; |
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}; |
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#endif // SIMPLE_PERF_RECORD_H_
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